Suppr超能文献

嗜胶红游动菌光合反应中心结合的四血红素细胞色素亚基上高电位铁硫蛋白的相互作用位点。

Interaction site for high-potential iron-sulfur protein on the tetraheme cytochrome subunit bound to the photosynthetic reaction center of Rubrivivax gelatinosus.

作者信息

Osyczka A, Nagashima K V, Shimada K, Matsuura K

机构信息

Department of Biology, Tokyo Metropolitan University, Japan.

出版信息

Biochemistry. 1999 Mar 9;38(10):2861-5. doi: 10.1021/bi982747w.

Abstract

We have recently demonstrated, using site-directed mutagenesis, that soluble cytochromes interact with the Rubrivivax gelatinosus photosynthetic reaction center (RC) in the vicinity of the low-potential heme 1 (c-551, Em = 70 mV) of the tetraheme cytochrome subunit, the fourth heme from the special pair of bacteriochlorophyll [Osyczka, A., et al. (1998) Biochemistry 37, 11732-11744]. Although the mutations generated in that study did not show clear effects on the electron transfer from high-potential iron-sulfur protein (HiPIP), which is the major physiological electron donor to the RC in this bacterium, we report here that other site-directed mutations near the solvent-exposed edge of the same low-potential heme 1, V67K (valine-67 substituted by lysine) and E79K/E85K/E93K (glutamates-79, -85, and -93, all replaced by lysines), considerably inhibit the electron transfer from HiPIP to the RC. Thus, it is concluded that HiPIP, like soluble cytochromes, binds to the RC in the vicinity of the exposed part of the low-potential heme 1 of the cytochrome subunit, although some differences in the configurations of the HiPIP-RC and cytochrome c-RC transient complexes may be postulated.

摘要

我们最近利用定点诱变证明,可溶性细胞色素在四血红素细胞色素亚基的低电位血红素1(c-551,Em = 70 mV)附近与嗜胶红假单胞菌光合反应中心(RC)相互作用,该血红素是来自细菌叶绿素特殊对的第四个血红素[奥西茨卡,A.等人(1998年)《生物化学》37卷,11732 - 11744页]。尽管该研究中产生的突变对来自高电位铁硫蛋白(HiPIP)的电子转移没有显示出明显影响,HiPIP是这种细菌中RC的主要生理电子供体,但我们在此报告,在同一低电位血红素1暴露于溶剂的边缘附近的其他定点突变,V67K(缬氨酸-67被赖氨酸取代)和E79K/E85K/E93K(谷氨酸-79、-85和-93全部被赖氨酸取代),显著抑制了从HiPIP到RC的电子转移。因此,可以得出结论,HiPIP与可溶性细胞色素一样,在细胞色素亚基低电位血红素1暴露部分附近与RC结合,尽管可能推测HiPIP - RC和细胞色素c - RC瞬时复合物的构型存在一些差异。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验